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一种用于检测噪音的低成本传感器。

An inexpensive sensor for noise.

作者信息

Hallett Laura, Tatum Marcus, Thomas Geb, Sousan Sinan, Koehler Kirsten, Peters Thomas

机构信息

a Department of Occupational and Environmental Health , The University of Iowa , Iowa City , Iowa.

b Department of Biomedical Engineering , The University of Iowa , Iowa City , Iowa.

出版信息

J Occup Environ Hyg. 2018 May;15(5):448-454. doi: 10.1080/15459624.2018.1438614.

Abstract

Noise is a pervasive workplace hazard that varies spatially and temporally. The cost of direct-reading instruments for noise hampers their use in a network. The objectives for this work were to: (1) develop an inexpensive noise sensor (<$100) that measures A-weighted sound pressure levels within ±2 dBA of a Type 2 sound level meter (SLM; ∼$1,800); and (2) evaluate 50 noise sensors for use in an inexpensive sensor network. The inexpensive noise sensor consists of an electret condenser microphone, an amplifier circuit, and a microcontroller with a small form factor (28 mm by 47 mm by 9 mm) than can be operated as a stand-alone unit. Laboratory tests were conducted to evaluate 50 of the new sensors at 5 sound levels: (1) ambient sound in a quiet office; (2) 3 pink noise test signals from 65-85 dBA in 10 dBA increments; and (3) 94 dBA using a SLM calibrator. Ninety-four percent of the noise sensors (n = 46) were within ±2 dBA of the SLM for sound levels from 65-94 dBA. As sound level increased, bias decreased, ranging from 18.3% in the quiet office to 0.48% at 94 dBA. Overall bias of the sensors was 0.83% across the 75 dBA to 94 dBA range. These sensors are available for a variety of uses and can be customized for many applications, including incorporation into a stationary sensor network for continuous monitoring of noise in manufacturing environments.

摘要

噪声是一种在工作场所普遍存在的危害,其在空间和时间上都会发生变化。用于噪声测量的直读式仪器成本较高,这限制了它们在网络中的使用。这项工作的目标是:(1)开发一种价格低廉(低于100美元)的噪声传感器,其测量的A加权声压级与2型声级计(SLM;约1800美元)的测量结果相差在±2 dBA以内;(2)评估50个噪声传感器在廉价传感器网络中的适用性。这种廉价的噪声传感器由一个驻极体电容式麦克风、一个放大电路和一个外形小巧(28毫米×47毫米×9毫米)的微控制器组成,可作为独立单元运行。进行了实验室测试,在5个声级下对50个新传感器进行评估:(1)安静办公室中的环境声音;(2)3个粉红噪声测试信号,声级从65 - 85 dBA,以10 dBA为增量;(3)使用SLM校准器产生的94 dBA的声音。对于65 - 94 dBA的声级,94%的噪声传感器(n = 46)与SLM的测量结果相差在±2 dBA以内。随着声级的增加,偏差减小,从安静办公室中的18.3%降至94 dBA时的0.48%。在75 dBA至94 dBA范围内,传感器的总体偏差为0.83%。这些传感器可用于多种用途,并可针对许多应用进行定制,包括集成到固定传感器网络中,用于连续监测制造环境中的噪声。

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